Charged multiplicities in pp and AA collisions at LHC

The mid-rapidity charged particle multiplicities in pp and AA collisions at LHC energies are described in the framework of a generalized eikonal model with shadowing corrections incorporated in AA . We show that the pp data require a Pomeron intercept close to 1.2, higher than the conventional one,...

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Published in:The European physical journal. C, Particles and fields Vol. 72; no. 3; pp. 1 - 6
Main Authors: Capella, A., Ferreiro, E. G.
Format: Journal Article
Language:English
Published: Berlin/Heidelberg Springer-Verlag 01-03-2012
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Abstract The mid-rapidity charged particle multiplicities in pp and AA collisions at LHC energies are described in the framework of a generalized eikonal model with shadowing corrections incorporated in AA . We show that the pp data require a Pomeron intercept close to 1.2, higher than the conventional one, close to 1.1. An s 0.11 energy dependence is obtained in the LHC range and beyond. The size and centrality dependence of the AA multiplicity at is reproduced and its energy dependence is predicted.
AbstractList The mid-rapidity charged particle multiplicities in pp and AA collisions at LHC energies are described in the framework of a generalized eikonal model with shadowing corrections incorporated in AA. We show that the pp data require a Pomeron intercept close to 1.2, higher than the conventional one, close to 1.1. An s0.11 energy dependence is obtained in the LHC range and beyond. The size and centrality dependence of the AA multiplicity at \(\sqrt{s} =2.76\ \mathrm{TeV}\) is reproduced and its energy dependence is predicted.
The mid-rapidity charged particle multiplicities in pp and AA collisions at LHC energies are described in the framework of a generalized eikonal model with shadowing corrections incorporated in AA . We show that the pp data require a Pomeron intercept close to 1.2, higher than the conventional one, close to 1.1. An s 0.11 energy dependence is obtained in the LHC range and beyond. The size and centrality dependence of the AA multiplicity at is reproduced and its energy dependence is predicted.
The mid-rapidity charged particle multiplicities in pp and AA collisions at LHC energies are described in the framework of a generalized eikonal model with shadowing corrections incorporated in AA. We show that the pp data require a Pomeron intercept close to 1.2, higher than the conventional one, close to 1.1. An [s.sup.0.11] energy dependence is obtained in the LHC range and beyond. The size and centrality dependence of the AA multiplicity at [square root of (s)] = 2.76 TeV is reproduced and its energy dependence is predicted.
ArticleNumber 1936
Audience Academic
Author Capella, A.
Ferreiro, E. G.
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  givenname: E. G.
  surname: Ferreiro
  fullname: Ferreiro, E. G.
  email: elena@fpaxp1.usc.es
  organization: Departamento de Física de Partículas and IGFAE, Universidad de Santiago de Compostela
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Issue 3
Keywords High Energy Phys
Triple Pomeron Vertex
AuAu Collision
PbPb Collision
Energy Dependence
LHC collider
Energy dependence
Multiplicity
Elementary particles
Shading
Collision energy
Models
Charged particles
Corrections
Mathematical physics
Pomerons
Language English
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PublicationSubtitle Particles and Fields
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Snippet The mid-rapidity charged particle multiplicities in pp and AA collisions at LHC energies are described in the framework of a generalized eikonal model with...
The mid-rapidity charged particle multiplicities in pp and AA collisions at LHC energies are described in the framework of a generalized eikonal model with...
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SubjectTerms Astronomy
Astrophysics and Cosmology
Charged particles
Collisions
Collisions (Nuclear physics)
Dependence
Elementary Particles
Exact sciences and technology
Hadrons
Heavy Ions
Measurement Science and Instrumentation
Nuclear Energy
Nuclear Physics
Physics
Physics and Astronomy
Pomerons
Quantum Field Theories
Quantum Field Theory
Regular Article - Theoretical Physics
String Theory
The physics of elementary particles and fields
Toy industry
Title Charged multiplicities in pp and AA collisions at LHC
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